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A Gene Constellation in Avian Influenza A (H7N9) Viruses May Have Facilitated the Fifth Wave Outbreak in China

机译:甲型H7N9禽流感病毒的基因星座可能促进了中国的第五波爆发

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Summary The 2016–2017 epidemic of influenza A (H7N9) virus in China prompted concern that a genetic change may underlie increased virulence. Based on an evolutionary analysis of H7N9 viruses from all five outbreak waves, we find that additional subclades of the H7 and N9 genes have emerged. Our analysis indicates that H7N9 viruses inherited NP genes from co-circulating H7N9 instead of H9N2 viruses. Genotypic diversity among H7N9 viruses increased following wave I, peaked during wave III, and rapidly deceased thereafter with minimal diversity in wave V, suggesting that the viruses entered a relatively stable evolutionary stage. The ZJ11 genotype caused the majority of human infections in wave V. We suggest that the largest outbreak of wave V may be due to a constellation of genes rather than a single mutation. Therefore, continuous surveillance is necessary to minimize the threat of H7N9 viruses.
机译:总结中国2016-2017年甲型H7N9流感的流行引起了人们的担忧,即遗传变化可能是高毒力的基础。根据对所有五个暴发浪潮中H7N9病毒的进化分析,我们发现还出现了H7和N9基因的其他子分支。我们的分析表明,H7N9病毒从共同传播的H7N9而不是H9N2病毒继承了NP基因。 H7N9病毒之间的基因型多样性在第I浪之后增加,在第III浪期间达到峰值,此后迅速下降,而在V浪中具有最小的多样性,这表明病毒进入了相对稳定的进化阶段。 ZJ11基因型在V波中引起了大多数人类感染。我们建议V波的最大爆发可能是由于基因的构象而不是单个突变。因此,必须进行连续监视以最大程度地减少H7N9病毒的威胁。

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